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Pin1 调节 c-Myc DNA 结合的动态性,从而促进靶基因调控和肿瘤发生。

Pin1 regulates the dynamics of c-Myc DNA binding to facilitate target gene regulation and oncogenesis.

机构信息

Department of Molecular and Medical Genetics, Oregon Health and Science University, Portland, Oregon, USA.

出版信息

Mol Cell Biol. 2013 Aug;33(15):2930-49. doi: 10.1128/MCB.01455-12. Epub 2013 May 28.

Abstract

The Myc oncoprotein is considered a master regulator of gene transcription by virtue of its ability to modulate the expression of a large percentage of all genes. However, mechanisms that direct Myc's recruitment to DNA and target gene selection to elicit specific cellular functions have not been well elucidated. Here, we report that the Pin1 prolyl isomerase enhances recruitment of serine 62-phosphorylated Myc and its coactivators to select promoters during gene activation, followed by promoting Myc's release associated with its degradation. This facilitates Myc's activation of genes involved in cell growth and metabolism, resulting in enhanced proproliferative activity, even while controlling Myc levels. In cancer cells with impaired Myc degradation, Pin1 still enhances Myc DNA binding, although it no longer facilitates Myc degradation. Thus, we find that Pin1 and Myc are cooverexpressed in cancer, and this drives a gene expression pattern that we show is enriched in poor-outcome breast cancer subtypes. This study provides new insight into mechanisms regulating Myc DNA binding and oncogenic activity, it reveals a novel role for Pin1 in the regulation of transcription factors, and it elucidates a mechanism that can contribute to oncogenic cooperation between Pin1 and Myc.

摘要

Myc 癌蛋白被认为是基因转录的主要调节因子,因为它能够调节所有基因的很大一部分表达。然而,指导 Myc 被招募到 DNA 上并选择靶基因以产生特定细胞功能的机制尚未得到很好的阐明。在这里,我们报告说,Pin1 脯氨酰异构酶增强了丝氨酸 62 磷酸化 Myc 及其共激活因子在基因激活过程中招募到特定启动子的能力,随后促进了与降解相关的 Myc 释放。这促进了 Myc 激活参与细胞生长和代谢的基因,导致增殖活性增强,即使在控制 Myc 水平的情况下也是如此。在 Myc 降解受损的癌细胞中,Pin1 仍然增强 Myc 的 DNA 结合,尽管它不再促进 Myc 降解。因此,我们发现癌症中 Pin1 和 Myc 共同过表达,这驱动了我们发现的一种基因表达模式,这种模式在预后不良的乳腺癌亚型中富集。这项研究为调节 Myc DNA 结合和致癌活性的机制提供了新的见解,它揭示了 Pin1 在转录因子调节中的新作用,并阐明了一种可能导致 Pin1 和 Myc 之间致癌合作的机制。

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